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公开(公告)号:US10198446B2
公开(公告)日:2019-02-05
申请号:US14414043
申请日:2012-07-31
Applicant: Soon Hung Han , Jinggao Li
Inventor: Soon Hung Han , Jinggao Li
Abstract: A CAD file converting device for applying CAD files created in a CAD system for machines to a CAD system for ships maps modeling units that the CAD files created in the CAD system for machines and those applied in the CAD system for ships, and converts parameter values determining feature shapes in the mapped modeling units into parameter values proper to the CAD files of the CAD system for ship design. Accordingly, CAD files of a CAD system for machines can be accurately converted into CAD files of a CAD system for ships.
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452.
公开(公告)号:US20190037229A1
公开(公告)日:2019-01-31
申请号:US16134579
申请日:2018-09-18
Applicant: Electronics and Telecommunications Research Institute , KOREA ADVANCED INSTITUTE OF SCIENCE AND TECHNOLOGY
Inventor: Jong Ho KIM , Hui Yong KIM , Se Yoon JEONG , Sung Chang LIM , Ha Hyun LEE , Jin Ho LEE , Suk Hee CHO , Jin Soo CHOI , Jin Woong KIM , Chie Teuk AHN , Mun Churl KIM , Bum Shik LEE
Abstract: Disclosed decoding method of the intra prediction mode comprises the steps of: determining whether an intra prediction mode of a present prediction unit is the same as a first candidate intra prediction mode or as a second candidate intra prediction mode on the basis of 1-bit information; and determining, among said first candidate intra prediction mode and said second candidate intra prediction mode, which candidate intra prediction mode is the same as the intra prediction mode of said present prediction unit on the basis of additional 1-bit information, if the intra prediction mode of the present prediction unit is the same as at least either the first candidate intra prediction mode or the second candidate intra prediction mode, and decoding the intra prediction mode of the present prediction unit.
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公开(公告)号:US10188351B2
公开(公告)日:2019-01-29
申请号:US15246712
申请日:2016-08-25
Inventor: Chisung Bae , Jin Woo Shin , Sung-Soo Ahn , Sang Joon Kim
IPC: A61B5/117 , A61B5/00 , A61B5/0452 , G06F21/32 , G06K9/00
Abstract: An authentication apparatus includes one or more processors configured to temporally implement a neural network, used to extract a feature value from hidden nodes, that is connected to input nodes to which an electrocardiogram (ECG) signal is input so as to share a weight set with the input nodes, and to match the ECG signal and the extracted feature value to a user for registration.
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公开(公告)号:US20190027967A1
公开(公告)日:2019-01-24
申请号:US16043384
申请日:2018-07-24
Inventor: Seungchul JUNG , Gyu Hyeong CHO , Sang Joon KIM , JongPal KIM , Se Un SHIN , Min Seong CHOI , Seok Tae KOH , Yu Jin YANG
Abstract: A wireless power receiving apparatus includes a receiving resonator configured to wirelessly receive energy; a resonant converter configured to transfer, to an output end of the wireless power receiving apparatus, energy of an energy storage device connected among a plurality of energy storage devices; and a controller configured to accumulate, alternatingly in the energy storage devices, the energy received, and select the energy storage device to be connected to the resonant converter from the energy storage devices.
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公开(公告)号:US20190022899A1
公开(公告)日:2019-01-24
申请号:US16138282
申请日:2018-09-21
Inventor: Jin Hwan LEE , Kyoung Sik JO , Min Young PARK , Sang Eon LEE , Seung Seob LEE
IPC: B29C33/42 , B65D85/72 , B29C59/02 , B05D1/26 , B29C33/38 , B29C33/56 , B29C43/36 , B29C43/50 , B29C59/04 , B65D65/42
Abstract: The present invention relates to a food packaging material for packing food, more particularly to a food packaging material having a uniform coating of oil, a method of manufacturing the same, and a mold for manufacturing the same. The food packaging material includes a plurality of grooves formed on one surface of the food packaging material; and an oil layer uniformly applied to the one surface of the food packaging material, being put into the grooves. According to the present invention, there are provided a food packaging material which continuously maintains a uniform coating of oil and thus minimizes sticking of contents to a surface of the packaging material, a method of manufacturing the same, and a mold for manufacturing the same.
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公开(公告)号:US10185013B2
公开(公告)日:2019-01-22
申请号:US15079671
申请日:2016-03-24
Inventor: Hyun-wook Park , Hyun-seok Seo
IPC: G01R33/483 , G01R33/561
Abstract: Provided is a magnetic resonance imaging (MRI) apparatus for generating an MR image based on a steady state free procession (SSFP) sequence. The MRI apparatus includes: a radio frequency (RF) controller configured to apply to an object a first RF pulse corresponding to a first slice and a second RF pulse corresponding to a second slice; a gradient magnetic field controller configured to control respective gradient magnetic fields in a first direction corresponding to the first and second RF pulses, from among spatial encoding gradients, to have opposite polarities with respect to each other; a data acquisition unit configured to acquire first and second MR signals corresponding to the first and second slices; and an image processor configured to generate first and second MR images corresponding to the first and second slices, respectively, based on the acquired first and second MR signals.
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457.
公开(公告)号:US20190018986A1
公开(公告)日:2019-01-17
申请号:US16032630
申请日:2018-07-11
Inventor: Yang-Kyu CHOI , Jun-Young PARK
Abstract: The present invention provides a thermal hardware-based data security device that is capable of physically, hardware-wise, and permanently erasing data stored in a memory and of enabling a storage device to be reused, and a method thereof. The thermal hardware-based data security device includes: a memory chip capable of storing data; a heater module which supplies heat to permanently erase the data stored in a memory cell within the memory chip; and a switch module which short-circuits the heater module between a power supply unit and a ground when switched on, and thus, controls the heater module to be operated.
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公开(公告)号:US20190013537A1
公开(公告)日:2019-01-10
申请号:US15798261
申请日:2017-10-30
Applicant: Hyundai Motor Company , Kia Motors Corporation , Korea Advanced Institute of Science and Technology
Inventor: Youjung Song , Won Jung KIM , Ki Ung JEON , Yeon Sik JUNG
IPC: H01M8/1018 , H01M8/0297 , H01M8/1007
CPC classification number: H01M8/1018 , H01M4/8652 , H01M4/8807 , H01M4/8825 , H01M4/8835 , H01M8/0297 , H01M8/1007 , H01M2008/1095
Abstract: A fuel cell may include a fuel supply unit for supplying hydrogen to a fuel cell stack; an air supply unit for supplying air to the fuel cell stack; and the fuel cell stack that generates energy using hydrogen and air supplied from the fuel supply unit and the air supply unit, wherein the fuel cell stack has a mesh structure and comprises a conductive polymer electrode containing about 0.1 to 1 wt % of polyethylene oxide (PEO) having a molecular weight of about 1,000 to 6,000 kg/mol.
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459.
公开(公告)号:US10172241B2
公开(公告)日:2019-01-01
申请号:US14478279
申请日:2014-09-05
Inventor: Kyung Wook Baek , Keon Jae Lee , Geon Tae Hwang , Hyeon Kyun Yoo , Do Hyun Kim , Yoo Sun Kim
Abstract: Provided is a flexible device, which includes a flexible substrate, a plurality of electrode lines provided on the flexible substrate and configured to contact the following anisotropic conductive film and then extend to a side of the flexible substrate, an anisotropic conductive film configured to contact the electrode line and laminated on the flexible substrate, a plurality of bumps provided on the anisotropic conductive film, and a circuit board having an electronic device provided at one side thereof and configured to contact the plurality of bumps.
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460.
公开(公告)号:US10166400B2
公开(公告)日:2019-01-01
申请号:US14538154
申请日:2014-11-11
Inventor: Keon Jae Lee , Myung Hwan Byun , Kwi Il Park , Geon Tae Hwang , Chang Kyu Chung
IPC: A61N1/00 , B32B38/00 , H01L41/08 , A61N1/378 , B32B38/10 , A61N1/36 , H01L41/113 , H01L41/312 , B82Y40/00 , A61N1/375 , A61N1/05
Abstract: Provided is a method for separating a nanogenerator, which includes laminating a buffer layer on a sacrificial substrate, making a nanogenerator on the buffer layer, laminating a metal layer on the nanogenerator and separating the nanogenerator from the buffer layer.Here, a nanogenerator is separated by using a stress difference between the sacrificial substrate and the metal layer, instead of an existing method in which a nanogenerator is separated from the sacrificial substrate by means of wet etching or the like. In particular, according to a difference between a tensile stress at the metal layer such as nickel and a compressive stress at the lower silicon substrate, the nanogenerator is intactly separated from the silicon oxide layer serving as a buffer layer. Therefore, the nanogenerator may be separated from the sacrificial substrate in a mechanical way, which is safer and more economic in comparison to an existing chemical separation method using an etching solution. Further, it is also possible to avoid a damage of the nanogenerator caused by an etching solution.
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